Generant grain assembly formed of multiple symmetric pieces
US-9051223-B2 · Jun 9, 2015 · US
US10035489B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10035489-B2 |
| Application number | US-201414896089-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 5, 2014 |
| Priority date | Jun 6, 2013 |
| Publication date | Jul 31, 2018 |
| Grant date | Jul 31, 2018 |
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A pyrotechnic charge for a pyrotechnic gas generator includes a plurality of blocks made of pyrotechnic material stacked in layers, each block being defined by two main faces that are substantially orthogonal to the stacking direction. In this pyrotechnic charge, each layer of the stack includes at least two distinct blocks of pyrotechnic material, each forming an angular sector of a ring or of a disk, the blocks being assembled together to form a ring and/or a disk.
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The invention claimed is: 1. A pyrotechnic charge for a pyrotechnic gas generator, the pyrotechnic charge comprising a plurality of blocks made of pyrotechnic material stacked in a plurality of layers, each block being defined by two main faces that are substantially orthogonal to a stacking direction of the plurality of layers, wherein each layer of the stack comprises at least two distinct blocks of pyrotechnic material, each forming an angular sector of a ring, said at least two distinct blocks in each layer of the stack being assembled together to form the ring, wherein at least one layer of the stack includes a central disk of pyrotechnic material, and wherein the ring formed by the at least two distinct blocks of said at least one layer of the stack is coaxial about said central disk, and wherein a thickness of the central disk is substantially equal to that of the ring, and wherein each of the at least two distinct blocks has a shape that is different from the shape of the central disk. 2. A pyrotechnic charge according to claim 1 , wherein at least one block of each layer presents at least one truncated corner. 3. A pyrotechnic charge according to claim 2 , wherein the truncated corner is chamfered. 4. A pyrotechnic charge according to claim 1 , wherein the central disk is formed by at least two distinct blocks, each forming an angular sector of a disk. 5. A pyrotechnic gas generator according to claim 1 , wherein a radius of the central disk is substantially equal to an inside radius of the ring. 6. A pyrotechnic charge according to claim 1 , wherein at least one block presents a rib on one of its main faces. 7. A pyrotechnic charge according to claim 1 , wherein at least one block presents at least one groove formed in one of its main faces, said groove extending from one edge to an opposite edge of said face. 8. A pyrotechnic charge according to claim 1 , wherein at least one block of the stack presents a notch in one of its lateral faces. 9. A pyrotechnic charge according to claim 8 , wherein the notch is in a radially outside face. 10. A pyrotechnic charge according to claim 1 , further comprising a plurality of said central disks of pyrotechnic material that are arranged in said plurality of layers so that, each layer of said plurality of layers of the stack includes one of said plurality of said a central disks of pyrotechnic material wherein, in each layer of the stack, a thickness of the central disk is substantially equal to that of the ring. 11. A pyrotechnic gas generator comprising a body housing a pyrotechnic charge according to claim 1 , and an ignition system configured to initiate combustion of said charge. 12. A pyrotechnic gas generator according to claim 11 , wherein each layer of the stack comprises a ring formed by assembling together at least two distinct blocks each forming an angular sector of a ring, the body presenting the shape of a right cylinder, and an outside radius of the ring is substantially equal to an inside radius of the body. 13. A gas generator according to claim 11 , wherein at least one block of each layer of the stack constituting the charge includes an opening, said opening being in alignment with an opening of a block of each other layer of the stack so as to form a channel extending right through the stack, and wherein the body includes positioning means adapted to co-operate with said channel. 14. A gas generator according to claim 13 , wherein the opening is a notch formed in one of the side faces of the block, said notch being in alignment with a notch in a block of each other layer of the stack, thereby forming a channel extending from end to end of the stack, and the positioning means comprise a positioning rib formed on the inside face of the body. 15. A gas generator according to claim 13 , wherein the opening is a positioning hole passing right through the block, opening out into its two main faces, said positioning hole being in alignment with a positioning hole in a block of each other layer of the stack so as to form a channel passing right through the stack, and the positioning means comprise a retaining pin adapted to pass through said channel so as to hold the layers of the stack in position.
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